Sensitizing TRAIL‑resistant A549 lung cancer cells and enhancing TRAIL‑induced apoptosis with the antidepressant

K M A Zinnah1, Sang-Youel Park1

  • 1Biosafety Research Institute, College of Veterinary Medicine, Jeonbuk National University, Iksan, Jeonbuk 54596, Republic of Korea.

Oncology Reports
|June 3, 2021
PubMed

Insights

The antidepressant amitriptyline sensitizes TRAIL-resistant lung cancer cells by upregulating death receptors 4 and 5. This enhances TRAIL-induced apoptosis and offers a novel therapeutic strategy for cancer treatment.

Area of Science:

  • Oncology
  • Molecular Biology
  • Pharmacology

Background:

  • Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) induces cancer cell apoptosis but faces resistance.
  • Developing agents to overcome TRAIL resistance is crucial for effective cancer therapy.

Purpose of the Study:

  • To investigate if amitriptyline can sensitize TRAIL-resistant A549 lung cancer cells.
  • To explore the mechanisms by which amitriptyline enhances TRAIL-induced apoptosis.

Main Methods:

  • Treatment of A549 lung cancer cells with amitriptyline and TRAIL.
  • Assessing expression of death receptors (DR4, DR5), cleaved caspase-8, and caspase-3.
  • Investigating the role of autophagy inhibition (using chloroquine) and its effect on DR4/DR5 expression.
  • Analyzing autophagy markers LC3-II and p62.

Main Results:

  • Amitriptyline significantly increased DR4 and DR5 expression in A549 cells.
  • Genetic inhibition of DR4/DR5 reduced amitriptyline-enhanced TRAIL-induced apoptosis.
  • Chloroquine also upregulated DR4/DR5 expression, enhancing TRAIL-mediated apoptosis.
  • Amitriptyline treatment led to increased cleaved caspase-8 and caspase-3, indicating apoptosis induction.
  • Amitriptyline was found to block autophagy by inhibiting autophagosome-lysosome fusion.

Conclusions:

  • Amitriptyline sensitizes TRAIL-resistant lung cancer cells by upregulating DR4 and DR5.
  • Amitriptyline enhances TRAIL-induced apoptosis through a mechanism involving autophagy inhibition.
  • This study presents a novel mechanism for DR4/DR5 upregulation and highlights amitriptyline's potential as an adjuvant cancer therapy.

Related Concept Videos

Antidepressant Drugs: Tricyclics, SSRIs, and SNRIs01:28

Antidepressant Drugs: Tricyclics, SSRIs, and SNRIs

Tricyclic Antidepressants (TCAs), including Desipramine (Norpramin), Imipramine (Tofranil), Clomipramine (Anafranil), and Amitriptyline (Elavil), inhibit serotonin and norepinephrine reuptake and also block other receptors. They are used for depression, pain conditions, and insomnia. Common adverse effects include anticholinergic effects, sedation, orthostatic hypotension, and weight gain. They have a narrow therapeutic window and so require plasma-level monitoring. Abrupt discontinuation can...
871
Drugs Affecting Neurotransmitter Release or Uptake01:21

Drugs Affecting Neurotransmitter Release or Uptake

Certain drugs can affect how neurotransmitters called catecholamines, are released or taken back up in the adrenergic neuron. They can have different effects on the body's sympathetic transmission. Reserpine, a natural compound found in the Rauwolfia shrub, blocks a transporter called vesicular monoamine transporter (VMAT), which leads to a buildup of catecholamines in the cell and reduces sympathetic transmission. Another drug called guanethidine works in multiple ways, including blocking...
1.3K
Antidepressant Drugs: MAOIs and Other Agents01:23

Antidepressant Drugs: MAOIs and Other Agents

Atypical antidepressants, including bupropion (Wellbutrin), mirtazapine (Remeron), nefazodone (Serzone), trazodone (Desyrel), and vilazodone (Viibryd), offer unique mechanisms of action. Bupropion weakly inhibits dopamine and norepinephrine reuptake, aiding depression treatment and smoking cessation, with a low risk of sexual dysfunction. Mirtazapine enhances serotonin and norepinephrine neurotransmission, leading to sedation, increased appetite, and weight gain. As a result, it helps treat...
527
Physical Properties of Amines01:26

Physical Properties of Amines

Amines with low molecular weight are usually gaseous at room temperature, while those with high molecular weight are liquid or solids in nature. Usually, low molecular weight amines have a rotten fish-like smell. Diamines typically have a pungent smell. For instance, cadaverine and putrescine, depicted in Figure 1, are two molecules responsible for decaying tissue.
3.6K